MIT researchers have created a new kind of antenna that can physically change shape, allowing it to adjust its frequency range on the fly. This...
Vous n'êtes pas connecté
MIT researchers have developed a reconfigurable antenna that dynamically adjusts its frequency range by changing its physical shape, making it more versatile for communications and sensing than static antennas.
MIT researchers have created a new kind of antenna that can physically change shape, allowing it to adjust its frequency range on the fly. This...
MIT researchers have created a new kind of antenna that can physically change shape, allowing it to adjust its frequency range on the fly. This...
Researchers in China have introduced an innovative “all-frequency” 6G chip, setting the stage for mobile internet speeds exceeding 100...
Over the past 26 years, more than 2,700 emerging leaders from Australia and Pacific nations have participated, representing a wide range of...
Over the past 26 years, more than 2,700 emerging leaders from Australia and Pacific nations have participated, representing a wide range of...
A hybrid reading strategy for screening mammography, developed by Dutch researchers and deployed retrospectively to more than 40,000 exams, reduced...
A hybrid reading strategy for screening mammography, developed by Dutch researchers and deployed retrospectively to more than 40,000 exams, reduced...
Researchers at the University of Minnesota Twin Cities have developed aerial robots equipped with artificial intelligence (AI) to detect, track and...
Pressure sensors are crucial in many emerging applications, but traditional designs are often bulky or inflexible. In a recent study, researchers from...
Pressure sensors are crucial in many emerging applications, but traditional designs are often bulky or inflexible. In a recent study, researchers from...